Coronal Neutrino Emission in Hypercritical Accretion Flows
نویسنده
چکیده
Hypercritical accretion flows onto stellar mass black holes (BHs) are commonly considered as a promising model of central engines of gamma-ray bursts (GRBs). In this model a certain fraction of gravitational binding energy of accreting matter is deposited to the energy of relativistic jets via neutrino annihilation and/or magnetic fields. However, some recent studies have indicated that the energy deposition rate by neutrino annihilation is somewhat smaller than that needed to power a GRB. To overcome this difficulty, Ramirez-Ruiz & Socrates (2005) proposed that high energy neutrinos from hot corona above the accretion disk might enhance the efficiency of energy deposition. We elucidate the disk corona model in the context of hypercritical accretion flows. From the energy balance in the disk and the corona, we can calculate the disk and coronal temperature, Td and Tc, and neutrino spectra, taking into account the neutrino cooling processes by neutrino-electron scatterings and neutrino pair productions. The calculated neutrino spectra consist of two peaks; one by the neutrino emission from the disk and the other by that from the corona. We find that the disk corona can enhance the efficiency of energy release but only by a factor of 1.5 or so, unless the height of the corona is very small, H ≪ r. This is because the neutrino emission is very sensitive to the temperature of emitting region, and then the ratio Tc/Td cannot be so large. Subject headings: accretion, accretion disks — black hole physics — gamma rays: bursts —neutrinos
منابع مشابه
Neutrino Cooled Accretion Disk and Its Stability
We investigate the structure and stability of hypercritical accretion flows around stellar-mass black holes, taking into account neutrino cooling, lepton conservation, and firstly a realistic equation of state in order to properly treat the dissociation of nuclei. We obtain the radial distributions of physical properties, such as density, temperature and electron fraction, for various mass accr...
متن کاملHypercritical Advection Dominated Accretion Flow
In this note we study the accretion disc that arises in hypercritical accretion of Ṁ ∼ 10 MEdd onto a neutron star while it is in common envelope evolution with a massive companion. Such a study was carried out by Chevalier (1996), who had earlier suggested that the neutron star would go into a black hole in common envelope evolution. In his later study he found that the accretion could possibl...
متن کاملAccretion Modes in Collapsars - Prospects for Grb Production
We explore low angular momentum accretion flows onto black holes formed after the collapse of massive stellar cores. In particular, we consider the state of the gas falling quasi-spherically onto stellar-mass black holes in the hypercritical regime, where the accretion rates are in the range 10−3 . Ṁ . 0.5M⊙ s−1 and neutrinos dominate the cooling. Previous studies have assumed that in order to ...
متن کاملX-ray Emissions from Three-dimensional Magnetohydrodynamic Coronal Accretion Flows
We calculate the radiation spectrum and its time variability of the black hole accretion disk-corona system based on the three-dimensional magnetohydrodynamic simulation. In explaining the spectral properties of active galactic nuclei (AGNs), it is often assumed that they consist of a geometrically thin, optically thick disk and hot, optically thin corona surrounding the thin disk. As for a mod...
متن کاملTime–dependent Hypercritical Accretion onto Black Holes
Stationary spherical accretion onto black holes is certainly a well–known and extensively studied topic (for a comprehensive review see Nobili, Turolla and Zampieri , Zampieri, Miller and Turolla ). Up to now all time–dependent investigations of spherical accretion have been concerned either with the analysis of the stability of isothermal , isentropic 4 and optically thick 6 flows or with the ...
متن کامل